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NMR of room temperature samples with a flux-locked dc SQUID

机译:磁通锁定直流SQUID的室温样品的NMR

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Superconducting quantum interference devices (SQUIDs) are the most sensitive detectors of magnetic fields. Since SQUIDs detect the magnetic flux rather than its rate of change, they can be used to great advantage to measure nuclear magnetic resonance (NMR) signals at low fields and frequencies. We have used a dc (direct-current) SQUID operated in flux-locked mode to significantly improve upon our previous low-field NMR results performed using an RF (radio-frequency) SQUID. The increase in sensitivity gained by using the dc SQUID has helped in reducing the signal acquisition time by a factor of more than 100 compared with our earlier measurements using an RP SQUID. We have also obtained a simple one-dimensional T/sub 1/-contrasted NMR image of a two-component sample consisting of mineral oil and tap water at room temperature. Our results highlight the sensitivity of the SQUID as an NMR detector and the promise of using SQUIDs in NMR imaging at low fields for both medical applications and for materials' nondestructive evaluation.
机译:超导量子干扰设备(SQUID)是最敏感的磁场检测器。由于SQUID检测到的是磁通量而不是其变化率,因此它们可用于在低磁场和低频率下测量核磁共振(NMR)信号。我们已使用以通量锁定模式运行的dc(直流)SQUID,大大改善了我们先前使用RF(射频)SQUID进行的低场NMR结果。与我们之前使用RP SQUID进行的测量相比,通过使用dc SQUID所获得的灵敏度的提高有助于将信号采集时间减少了100倍以上。我们还获得了在室温下由矿物油和自来水组成的两组分样品的简单一维T / sub 1 /对比NMR图像。我们的结果强调了SQUID作为NMR检测器的灵敏度以及在医学领域和材料的无损评估中在低场NMR成像中使用SQUID的前景。

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